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Ultra-fast charging station for electric vehicles with integrated split grid storage

机译:带有集成拆分式电网存储的电动汽车超快充电站

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This paper presents the detailed analysis, optimisation and hardware realisation of an ultra-fast charging station with a split grid storage battery which enables to recharge electric vehicles (EVs) in less than 10 minutes. The station consists of a T-type AC-DC grid interface connected to the 400 V low voltage AC grid, a DC-DC dual active bridge (DAB) isolation stage, a stationary storage battery and a high power multi-phase interleaved buck converter for charging operation. The operating principle of the converter systems is briefly explained and the analytical loss models of the components are derived which are used in an optimisation procedure to evaluate the pareto front limits in terms of efficiency and power density for the DAB isolation stage and the high power charger. By introducing a split storage battery, beneficial conditions for the semiconductor devices are achieved so that the losses of the high power charger can be reduced by approximately 35 % with respect to a standard solution without a split as will be shown in the paper.
机译:本文介绍了具有分裂式网格蓄电池的超快速充电站的详细分析,优化和硬件实现,该蓄电池可在不到10分钟的时间内为电动汽车(EV)充电。该站包括一个连接到400 V低压AC电网的T型AC-DC电网接口,一个DC-DC双有源桥(DAB)隔离级,一个固定式蓄电池和一个高功率多相交错式降压转换器用于充电操作。简要说明了转换器系统的工作原理,并导出了组件的分析损耗模型,这些模型在优化过程中用于评估DAB隔离级和大功率充电器在效率和功率密度方面的最大前极限。通过引入分体式蓄电池,可以实现半导体器件的有利条件,从而相对于没有分体的标准解决方案,高功率充电器的损耗可以减少大约35%,如纸上所示。

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